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首页> 外文期刊>Solar Physics >Determination of Electron Flux Spectra in a Solar Flare with an Augmented Regularization Method: Application to Rhessi Data
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Determination of Electron Flux Spectra in a Solar Flare with an Augmented Regularization Method: Application to Rhessi Data

机译:增强正则化方法测定太阳耀斑中的电子通量谱:在Rhessi数据中的应用

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摘要

Kontar et al. (2004) have shown how to recover mean source electron spectra $bar F(E)$ in solar flares through a physical constraint regularization analysis of the bremsstrahlung photon spectra I(ε) that they produce. They emphasize the use of non-square inversion techniques, and preconditioning combined with physical properties of the spectra to achieve the most meaningful solution to the problem. Higher-order regularization techniques may be used to generate $bar F(E)$ forms with certain desirable properties (e.g., higher-order derivatives). They further note that such analysis may be used to infer properties of the electron energy spectra at energies well above the maximum photon energy observed. In this paper we apply these techniques to data from a solar flare observed by RHESSI on 26 February, 2002. Results using different orders of regularization are presented and compared for various time intervals. Clear evidence is presented for a change in the value of the high-energy cutoff in the mean source electron spectrum with time. We also show how the construction of the injected electron spectrum F 0(E 0) (assuming that Coulomb collisions in a cold target dominate the electron transport) is facilitated by the use of higher-order regularization methods.
机译:Kontar等。 (2004年)已经展示了如何通过对其产生的致辐射光子光谱I(ε)的物理约束正则化分析来恢复太阳耀斑中的平均源电子光谱$ bar F(E)$。他们强调使用非平方反演技术,并结合光谱的物理特性进行预处理,以实现对该问题的最有意义的解决方案。可以使用高阶正则化技术来生成具有某些所需属性的Bar F(E)$形式(例如,高阶导数)。他们进一步指出,这种分析可用于推断远高于观察到的最大光子能量的能量下的电子能谱的特性。在本文中,我们将这些技术应用于RHESSI在2002年2月26日观测到的太阳耀斑数据。给出了使用不同正则化阶数的结果,并比较了不同时间间隔的结果。清晰的证据表明平均源电子光谱中高能截止值随时间的变化。我们还展示了如何通过使用高阶正则化方法来促进注入的电子光谱F 0 (E 0 )的构造(假设冷目标中的库仑碰撞主导了电子传输) 。

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  • 来源
    《Solar Physics》 |2005年第2期|317-325|共9页
  • 作者单位

    Department of Physics and Astronomy University of Glasgow;

    Department of Physics The University of Alabama in Huntsville;

    Dipartimento di Matematica Universita di Genova;

    INFM UdR di Genova;

    Department of Physics and Astronomy University of Glasgow;

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